Seth Dixon Data-verified
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Biography and Research Information
OverviewAI-generated summary
Seth Dixon's research focuses on understanding how specific microbial interventions influence plant physiology and stress tolerance. His recent publication investigates the role of *Azospirillum brasilense* in enhancing rice growth under conditions of salt stress. This study examines how the bacteria modulate the expression of genes critical for salt stress response, abscisic acid signaling, and nutrient transport in rice plants. Dixon collaborates with researchers from the University of Arkansas for Medical Sciences and the University of Central Arkansas on various projects. He has a total of two publications with 35 citations and an h-index of 2.
Metrics
- h-index: 2
- Publications: 2
- Citations: 39
Selected Publications
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Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others (2023)
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- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
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